首页> 美国卫生研究院文献>Eukaryotic Cell >The Kip3-Like Kinesin KipB Moves along Microtubules and Determines Spindle Position during Synchronized Mitoses in Aspergillus nidulans Hyphae
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The Kip3-Like Kinesin KipB Moves along Microtubules and Determines Spindle Position during Synchronized Mitoses in Aspergillus nidulans Hyphae

机译:Kip3-like Kinesin KipB沿着微管移动并确定构巢曲霉菌丝同步线粒体期间的主轴位置。

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摘要

Kinesins are motor proteins which are classified into 11 different families. We identified 11 kinesin-like proteins in the genome of the filamentous fungus Aspergillus nidulans. Relatedness analyses based on the motor domains grouped them into nine families. In this paper, we characterize KipB as a member of the Kip3 family of microtubule depolymerases. The closest homologues of KipB are Saccharomyces cerevisiae Kip3 and Schizosaccharomyces pombe Klp5 and Klp6, but sequence similarities outside the motor domain are very low. A disruption of kipB demonstrated that it is not essential for vegetative growth. kipB mutant strains were resistant to high concentrations of the microtubule-destabilizing drug benomyl, suggesting that KipB destabilizes microtubules. kipB mutations caused a failure of spindle positioning in the cell, a delay in mitotic progression, an increased number of bent mitotic spindles, and a decrease in the depolymerization of cytoplasmic microtubules during interphase and mitosis. Meiosis and ascospore formation were not affected. Disruption of the kipB gene was synthetically lethal in combination with the temperature-sensitive mitotic kinesin motor mutation bimC4, suggesting an important but redundant role of KipB in mitosis. KipB localized to cytoplasmic, astral, and mitotic microtubules in a discontinuous pattern, and spots of green fluorescent protein moved along microtubules toward the plus ends.
机译:驱动蛋白是运动蛋白,分为11个不同家族。我们在丝状真菌构巢曲霉的基因组中鉴定出11种驱动蛋白样蛋白。基于运动域的相关性分析将它们分为九个家族。在本文中,我们将KipB表征为微管解聚酶Kip3家族的成员。 KipB的最接近同源物是啤酒酵母Kip3和粟酒裂殖酵母Klp5和Klp6,但运动域外的序列相似性非常低。 kipB的破坏表明它对营养生长不是必需的。 kipB突变株对高浓度的微管不稳定药物苯菌灵具有抗性,这表明KipB使微管不稳定。 kipB突变导致纺锤体在细胞中定位失败,有丝分裂进程延迟,弯曲的有丝分裂纺锤体数量增加以及在相间和有丝分裂期间胞质微管解聚的减少。减数分裂和子囊孢子的形成不受影响。结合温度敏感的有丝分裂驱动蛋白运动突变bimC4,kipB基因的破坏是致命的,提示KipB在有丝分裂中起着重要但多余的作用。 KipB以不连续的模式定位于细胞质,星状和有丝分裂微管,绿色荧光蛋白斑点沿着微管向正端移动。

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